Molnar Nicole, Capik Allie, Ishak Amgad, Maglakelidze Natella, Pasick Luke J, Reneker Billie, Volino Alyse, O'Connell Marcia L
The Department of Biology, The College of New Jersey, Ewing, NJ, USA.
The Department of Molecular Biology, Princeton University, Princeton, NJ, USA.
Zygote. 2025 Feb;33(1):45-55. doi: 10.1017/S0967199425000024. Epub 2025 Feb 25.
During embryogenesis in (zebrafish), the earliest morphological patterning events are dependent on the precise temporal translation and/or localization of specific maternal mRNAs/proteins. Dorsoventral patterning in particular requires the translocation of maternal factors that are present in the Balbiani Body from the vegetal region of the unfertilized egg to the future dorsal side of the embryo (Fuentes ., 2020), leading to the localized activation of the β-catenin pathway in the cells in that region. Since zebrafish are chordates, this dorsoventral patterning then leads to the formation of neural tissue on the dorsal side of the embryo. What is not yet clear is the identity of all maternal and zygotic factors that first establish dorsoventral patterning, and which factors lead to the establishment of neural versus non-neural tissue. Taking an evolutionary approach to this question, we investigated a gene in zebrafish, (), that is homologous to a key dorsoventral patterning gene in fruit flies () called (Kelley, 1993). While dorsoventral patterning in flies and fish looks quite different both morphologically and at the molecular level, we demonstrate that not only has a key dorsoventral patterning gene in flies been conserved in fish, maternal fish zsquidlike-A protein is synthesized precisely as dorsoventral patterning is unfolding in fish embryos, and in its absence, dorsoventral patterning is severely disrupted.
在斑马鱼的胚胎发育过程中,最早的形态模式形成事件依赖于特定母体mRNA/蛋白质的精确时间翻译和/或定位。特别是背腹模式形成需要存在于巴氏小体中的母体因子从未受精卵的植物区域转移到胚胎未来的背侧(富恩特斯等人,2020年),从而导致该区域细胞中β-连环蛋白途径的局部激活。由于斑马鱼是脊索动物,这种背腹模式形成随后导致胚胎背侧神经组织的形成。目前尚不清楚的是最初建立背腹模式的所有母体和合子因子的身份,以及哪些因子导致神经组织与非神经组织的建立。为了解决这个问题,我们采用了一种进化方法,研究了斑马鱼中的一个基因(zsquidlike-A),它与果蝇中一个关键的背腹模式形成基因(squid)同源(凯利,1993年)。虽然果蝇和鱼类的背腹模式形成在形态和分子水平上看起来非常不同,但我们证明,不仅果蝇中的一个关键背腹模式形成基因在鱼类中得到了保守,母体鱼类zsquidlike-A蛋白在鱼类胚胎背腹模式形成展开时精确合成,并且在其缺失时,背腹模式形成会严重破坏。